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首页> 外文期刊>Journal of Materials Engineering and Performance >Research on Resistance Heating Behavior of High-Strength Steel and its Hot-Stamping Forming
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Research on Resistance Heating Behavior of High-Strength Steel and its Hot-Stamping Forming

机译:高强度钢的电阻加热行为及其热冲压成型研究

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A hot-stamping process of high-strength steel sheet using resistance heating (RH) was developed to improve springback and formability. The RH curves of S355J2W steel and the microstructure and mechanical properties after RH were explored to control and guide the RH time and the selected current density for the subsequent RH hot-stamping forming. Moreover, scanning electron microscopy observations revealed the microstructure evolution in RH and the improvement of mechanical properties at a current density of 0-6.67?A?mm_(?2), showing the advantage of the application of RH to these materials. The results showed that steel strength can be increased by up to 3.2% and the elongation can be improved by up to 33% after RH. In addition, the forming height increased and the forming angle is closer to the desired angle with the increased current density in cap-shaped RH hot-stamping forming experiment, which means that the forming accuracy is improved. A comparison of the forming accuracy of cap-shaped parts formed by RH under different current densities with those heated to the same temperature by furnace heating (FH) shows that there is no obvious difference between them. The heating time of RH is much shorter than that of the FH, and the surface quality of the parts formed by RH hot-stamping is better than that of the parts formed by FH hot-stamping. These results demonstrate that the RH method has the advantages of efficiency, safety, energy saving and the improvement of surface quality as well as a clear understanding of the benefits of RH hot-stamping forming for materials properties and forming accuracy; this work also develops and applies fundamental theory to practical engineering of bogie cover plate manufacturing.
机译:开发了一种使用电阻加热(RH)的高强度钢板的热冲压过程以改善回弹和可成形性。探索RH后的S355J2W钢的RH曲线和RH后的微观结构和机械性能,以控制和引导随后的RH热冲压成型的rh时间和所选电流密度。此外,扫描电子显微镜观察显示RH中的微观结构演化和电流密度的机械性能的改善为0-6.67ΩΩ·(α2),显示RH施加到这些材料的优点。结果表明,钢强度可以增加3.2%,延长速度可在RH后提高33%。另外,成形高度增加并且成形角度与帽形RH热冲压形成实验中的电流密度增加更靠近所需角度,这意味着改善了成形精度。通过炉加热(FH)加热到相同温度的不同电流密度下RH形成的帽形部件的成形精度的比较表明它们之间没有明显的差异。 RH的加热时间比FH的加热时间要短得多,并且通过RH热冲压形成的部件的表面质量优于由FH热冲压形成的部件的表面质量。这些结果表明,RH法具有效率,安全性,节能和表面质量的改善的优点,以及清楚地了解RH热冲压形成材料性能和形成精度的益处;这项工作还开发并应用了博吉盖板制造业实用工程的基本理论。

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